Dickson Peter A, Montgomery Grant W, Henders Anjali, Campbell Megan J, Martin Nicholas G, James Michael R
Queensland Institute of Medical Research, Brisbane, 4029 Australia.
Nucleic Acids Res. 2005 Jul 29;33(13):e119. doi: 10.1093/nar/gni126.
Multiple displacement amplification (MDA) has emerged as a promising new method of whole genome amplification (WGA) with the potential to generate virtually unlimited genome-equivalent DNA from only a small amount of seed DNA. To date, genome-wide high marker density assessments of MDA-DNA have focussed mainly upon suitability for single nucleotide polymorphism (SNP) genotyping applications. Suitability for short tandem repeat (STR) genotyping has not been investigated in great detail, despite their inherent instability during DNA replication, and the obvious challenge that this presents to WGA techniques. Here, we aimed to assess the applicability of MDA in STR genotyping by conducting a genome-wide scan of 768 STR markers for MDAs of 15 high quality genomic DNAs. We found that MDA genotyping call and accuracy rates were only marginally lower than for genomic DNA. Pooling of three replicate MDAs resulted in a small increase in both call rate and genotyping accuracy. We identified 34 STRs (4.4% of total markers) of which five essentially failed with MDA samples, and 29 of which showed elevated genotyping failures/discrepancies in the MDAs. We emphasise the importance of DNA and MDA quality checks, and the use of appropriate controls to identify problematic STR markers.
多重置换扩增(MDA)已成为一种很有前景的全基因组扩增(WGA)新方法,它有可能仅从少量起始DNA生成几乎无限量的基因组等效DNA。迄今为止,对MDA-DNA的全基因组高标记密度评估主要集中在其对单核苷酸多态性(SNP)基因分型应用的适用性上。尽管短串联重复序列(STR)在DNA复制过程中具有固有的不稳定性,并且这给WGA技术带来了明显挑战,但尚未对MDA在STR基因分型中的适用性进行详细研究。在这里,我们旨在通过对15种高质量基因组DNA的MDA进行768个STR标记的全基因组扫描,评估MDA在STR基因分型中的适用性。我们发现,MDA基因分型的检出率和准确率仅略低于基因组DNA。三个重复MDA的合并导致检出率和基因分型准确率略有提高。我们鉴定出34个STR(占总标记的4.4%),其中5个在MDA样本中基本失败,29个在MDA中显示出基因分型失败/差异增加。我们强调DNA和MDA质量检查以及使用适当对照来识别有问题的STR标记的重要性。